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Online Assessment of Contact Erosion in High Voltage Gas Circuit Breakers Based on Different Physical Quantities

机译:基于不同物理量的高压气体断路器接触侵蚀在线评估

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In this paper, an effort has been made to evaluate the online condition of arc contacts as a vital component of interruption chamber in high-voltage puffer-type SF6 circuit breakers. The relationship between eroded mass caused by short-circuit current interruption and different thermal stress indices, such as transferred electrical charge, current squared, and arc energy, is investigated by performing many experiments with different current amplitudes and arcing times. It is demonstrated that none of the known indices can solely determine mass erosion caused by the current interruption. Therefore, the equations including two of the defined parameters are proposed to evaluate mass erosion. The method using arc energy and transferred electrical charge owns the highest accuracy in evaluating mass loss. However, considering the complexity of arc voltage measurements, a second method using current and arcing time can be also utilized. In addition, the development of erosion during the lifetime of arc contacts is studied. It is shown that arc roots tend to form on new uneroded areas of the contacts during current interruption, resulting in different erosion rates between the first few and subsequent interruptions due to change of morphology of the contacts after the first few switching operations.
机译:在本文中,已经努力评估电弧触点的在线状态作为高压跨越SF6断路器中断室的重要组成部分。通过执行具有不同电流幅度和电弧缩小时间的许多实验,通过执行许多实验来研究由短路电流中断和不同的热应力指数(例如转移电荷,电流和电弧能)之间的关系。据证明,没有一种已知的指数可以仅确定由当前中断引起的质量侵蚀。因此,提出了包括两个定义参数的等式来评估质量侵蚀。使用电弧和转移电荷的方法具有评估质量损失的最高精度。然而,考虑到电弧电压测量的复杂性,也可以使用使用电流和电弧时间的第二种方法。此外,研究了在电弧触点的寿命期间侵蚀的发展。结果表明,电弧根倾向于在电流中断期间在触点的新未经编码区域上形成,导致前几个少数和随后的中断之间的不同侵蚀速率由于在前几个切换操作之后的触点的形态变化。

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